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羽毛髓:一种新型基质,可用于质子磁共振波谱代谢组学和生物标志物发现。

Feather pulp: a novel substrate useful for proton nuclear magnetic resonance spectroscopy metabolomics and biomarker discovery.

机构信息

Lethbridge Research and Development Centre, Agriculture and Agri-Food Canada, Lethbridge, Alberta, Canada T1J 4B1; Department of Biological Sciences, University of Lethbridge, Lethbridge, Alberta, Canada T1K 3M4.

Southern Alberta Genome Science Centre, University of Lethbridge, Lethbridge, Alberta, Canada T1K 3M4; Department of Chemistry and Biochemistry, University of Lethbridge, Lethbridge, Alberta, Canada T1K 3M4.

出版信息

Poult Sci. 2022 Jul;101(7):101866. doi: 10.1016/j.psj.2022.101866. Epub 2022 Mar 23.

Abstract

Noninvasive biomarkers of stress that are predictive of poultry health are needed. Feather pulp is highly vascularized and represents a potential source of biomarkers that has not been extensively explored. We investigated the feasibility and use of feather pulp for novel biomarker discovery using H-Nuclear Magnetic Resonance Spectroscopy (NMR)-based metabolomics. To this end, high quality NMR metabolomic spectra were obtained from chicken feather pulp extracted using either ultrafiltration (UF) or Bligh-Dyer methanol-chloroform (BD) methods. In total, 121 and 160 metabolites were identified using the UF and BD extraction methods, respectively, with 71 of these common to both methods. The metabolome of feather pulp differed in broiler breeders that were 1-, 23-, and 45-wk-of-age. Moreover, feather pulp was more difficult to obtain from older birds, indicating that age must be considered when targeting feather pulp as a source of biomarkers. The metabolomic profile of feather pulp obtained from 12-day-old broilers administered corticosterone differed from control birds, indicating that the metabolome of feather pulp was sensitive to induced physiological stress. A comparative examination of feather pulp and serum in broilers revealed that the feather pulp metabolome differed from that of serum but provided more information. The study findings show that metabolite biomarkers in chicken feather pulp may allow producers to effectively monitor stress, and to objectively develop and evaluate on-farm mitigations, including practices that reduce stress and enhance bird health.

摘要

需要寻找能够预测家禽健康的非侵入性应激生物标志物。羽毛髓富含血管,是一种尚未被广泛探索的生物标志物潜在来源。我们使用基于 H-核磁共振波谱(NMR)的代谢组学研究了羽毛髓作为新型生物标志物发现的可行性和用途。为此,我们使用超滤(UF)或 Bligh-Dyer 甲醇-氯仿(BD)方法从鸡羽毛髓中提取高质量的 NMR 代谢组学谱。使用 UF 和 BD 提取方法分别鉴定出 121 种和 160 种代谢物,其中 71 种代谢物在两种方法中均存在。1 周、23 周和 45 周龄的肉种鸡羽毛髓的代谢组不同。此外,从老年鸟类中更难获得羽毛髓,这表明在将羽毛髓作为生物标志物的来源时必须考虑年龄因素。从 12 日龄接受皮质酮处理的肉鸡中获得的羽毛髓代谢组与对照鸟类不同,这表明羽毛髓的代谢组对诱导的生理应激敏感。对肉鸡的羽毛髓和血清进行比较分析表明,羽毛髓的代谢组与血清不同,但提供了更多信息。研究结果表明,鸡羽毛髓中的代谢物生物标志物可能使生产者能够有效监测应激,并客观地制定和评估农场缓解措施,包括减少应激和增强鸟类健康的措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11a7/9189206/fbcbb5299cd3/gr1.jpg

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